Assessment of the technological reliability of a hybrid constructed wetland for wastewater treatment in a mountain eco-tourist farm in Poland

Author:

Jucherski Andrzej1,Nastawny Maria1,Walczowski Andrzej1,Jóźwiakowski Krzysztof2,Gajewska Magdalena3

Affiliation:

1. Mountain Centre of Studies and Implementations in Tylicz, Institute of Technology and Life Sciences in Falenty, Pułaskiego St. 25A, 33-383 Tylicz, Poland

2. Department of Environmental Engineering and Geodesy, University of Life Sciences in Lublin, Leszczyńskiego 7, 20-069 Lublin, Poland

3. Department of Water and Wastewater Technology, Gdańsk University of Technology, Narutowicza st. 11/12, 80-233 Gdańsk, Poland

Abstract

The aim of the present study was to assess the technological reliability of a domestic hybrid wastewater treatment installation consisting of a classic three-chambered (volume 6 m3) septic tank, a vertical flow trickling bed filled with granules of a calcinated clay material (KERAMZYT), a special wetland bed constructed on a slope, and a permeable pond used as a receiver. The test treatment plant was located at a mountain eco-tourist farm on the periphery of the spa municipality of Krynica-Zdrój, Poland. The plant's operational reliability in reducing the concentration of organic matter, measured as biochemical oxygen demand (BOD5) and chemical oxygen demand (COD), was 100% when modelled by both the Weibull and the lognormal distributions. The respective reliability values for total nitrogen removal were 76.8% and 77.0%, total suspended solids – 99.5% and 92.6%, and PO4-P – 98.2% and 95.2%, with the differences being negligible. The installation was characterized by a very high level of technological reliability when compared with other solutions of this type. The Weibull method employed for statistical evaluation of technological reliability can also be used for comparison purposes. From the ecological perspective, the facility presented in the study has proven to be an effective tool for protecting local aquifer areas.

Publisher

IWA Publishing

Subject

Water Science and Technology,Environmental Engineering

Reference25 articles.

1. Analysis of reliability of the treatment plant Bioblok PS-50 using the method of Weibull;Bugajski;Infr. Ecol. of Rur. Are,2014

2. Application of the Weibull reliability analysis of household sewage treatment plant;Bugajski;Gaz, Woda i Technika Sanitarna,2012

3. Wastewater treatment plant reliability prediction using artificial neural networks;Djeddou,2015

4. A methodology to evaluate water and wastewater treatment plant reliability;Eisenberg;Water Sci. Technol.,2001

5. Impact of influent wastewater quality on nitrogen removal rates in multistage treatment wetlands;Gajewska;Environ. Sci. Pollut. Res.,2015

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